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Strengthening security and privacy in an ultra-dense green 5G Radio Access Network for the industrial and tactile Internet of Things

机译:在用于工业和触觉互联网的超密集绿色5G无线电接入网络中加强安全和隐私

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The design of exceptionally-strong security and privacy in an ultra-dense green 5G Deterministic Radio Access Network (DRAN) for the Internet of Things (IoT) is proposed. The ultra-dense DRAN exploits fiber-optics and 802.11ad Multi-GHz WiFi technology to transport both fronthaul and backhaul traffic in a unified low-cost Crosshaul network. The Crosshaul network is similar to a very large highly-utilized IEEE Time Synchronized Channel Hopping (TSCH) network, where collision-free scheduling becomes critical. Traditional Omnidirectional Antennas and Media-Access-Control (MAC) protocols cannot be used with 5G systems. This paper shows that the combination of: (1) a centralized SDN control-plane, (2) deterministic low-jitter scheduling, and (iii) lightweight encryption in layer 2, offers a new approach for wireless security and performance with several benefits; (i) All active radio links are identified in advance and can be optimally scheduled. Every transmission has a deterministic time-slot, source, destination, and wireless channel; (ii) Any unauthorized transmissions, even a single packet transmission, can be detected quickly and reported to the SDN control-plane for corrective action; (iii) Wireless interference can be minimized by using pre-programmed Directional-Antennas; (iv) Wireless buffer sizes and queueing delays can be reduced to near-minimal values; and (v) Wireless Crosshaul bandwidth requirements can be reduced significantly. Our 5G DRAN can embed thousands of Deterministic Virtual Networks (DVNs) or Deterministic Network Slices, to ensure exceptionally-strong security and privacy between different M2M or D2D systems. The secure 5G DRAN can also integrate seamlessly with a future secure deterministic Industrial-Tactile IoT.
机译:提出了用于互联网(物联网)的超密集绿色5G确定性无线电接入网络(DRAN)的异常强的安全和隐私。超密集的DRAN利用光纤和802.11AD多GHz WIFI技术,以在统一的低成本交叉网络中运输Fronthaul和Reachhaulawore。交叉网络类似于非常大的高度利用的IEEE时间同步信道跳跃(TSCH)网络,其中碰撞调度变得至关重要。传统的全向天线和媒体访问控制(MAC)协议不能与5G系统一起使用。本文表明:(1)集中式SDN控制平面,(2)确定性低抖动调度,(III)在第2层中的轻量级加密,提供了一种具有多种优势的无线安全性和性能的新方法; (i)预先识别所有活动的无线电链路,可以最佳安排。每个传输都具有确定性时隙,源,目的地和无线通道; (ii)可以快速检测到任何未经授权的传输,即使是单个数据包传输,也可以将SDN控制平面报告以进行纠正措施; (iii)通过使用预编程的定向 - 天线可以最小化无线干扰; (iv)无线缓冲尺寸和排队延迟可以减少到近乎最小值; (v)无线交叉带宽要求可显着降低。我们的5G Dran可以嵌入数千个确定的虚拟网络(DVN)或确定性网络切片,以确保不同的M2M或D2D系统之间的异常安全和隐私。安全5G DRAN还可以与未来的安全确定性工业触觉IOT无缝集成。

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